Comprehensive Review: Optimization of Epoxy Composites, Mechanical Properties, & Technological Trends

环氧树脂 材料科学 芳纶 航空航天 复合材料 背景(考古学) 环境友好型 持续性 汽车工业 分层(地质) 先进复合材料 复合数 纤维 工程类 古生物学 生态学 构造学 俯冲 生物 航空航天工程
作者
Jozef Jaroslav Fekiač,Michal Krbaťa,Marcel Kohutiar,Róbert Janík,Lucia Kakošová,Alena Breznická,Maroš Eckert,Pavol Mikuš
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:17 (3): 271-271 被引量:4
标识
DOI:10.3390/polym17030271
摘要

Epoxy composites play a crucial role in modern materials technologies, with their exceptional properties such as high strength and thermal and chemical resistance, making them ideal for a wide range of industrial applications, including aerospace, automotive, construction, and energy. This review article provides a comprehensive overview of the current trends and advancements in epoxy composites, focusing on mechanical properties and their optimization. Attention is given to technological innovations, including the use of nanotechnologies, hybrid reinforcement, and eco-friendly materials, which are key to enhancing the performance and sustainability of these materials. The analysis shows that the introduction of nanomaterials, such as graphene, titanium dioxide, and silicon dioxide, can significantly improve the strength, fatigue resistance, and electrical properties of epoxy composites, opening new possibilities in advanced technologies. Another significant contribution is the development of hybrid composites, which combine different types of fibers, such as carbon, aramid, and glass fibers, enabling the optimization of key properties, including interlayer strength and delamination resistance. The article also highlights the importance of environmental innovations, such as bio-based resins and self-healing mechanisms, which enable more sustainable and long-term effective use of composites. The combination of theoretical knowledge with practical applications provides valuable guidance for designing materials with precisely defined properties for future industrial use. This text thus offers a comprehensive view of the possibilities of epoxy composites in the context of increasing demands for performance, reliability, and environmental sustainability.
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